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A Gas Flow Method for Determiantion of In-Plane Permeability of Fiber Preforms

机译:气流法测定纤维预制棒的面内渗透率

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摘要

Resin flow plays a crucial role in many composite manufacturing processes. The most important parameters used in modeling and designing mold filling are the permeability of the fibrous preform, which is a kind of flow conductance and a property of the reinforcement, and the viscosity of the resin. The extent of chemical reaction, or degree of cure, is also important and causes change of resin viscosity during mold filling. To determine the permeability of fiber preforms. many re- searchers have been using liquid flow analysis. In this study, a new scheme for de- termining permeability using gas flow is proposed. In conventional liquid flow methods, radial propagation of the polymer into a porous medium is measured and used to determine permeability , whereas in the gas flow method, the flow rate for several different preform geometries is measured and used. The effectiveness of the gas flow method was verified by comparing it with conventional raethods.
机译:树脂流动在许多复合材料制造过程中起着至关重要的作用。用于建模和设计模具填充的最重要参数是纤维预成型件的渗透性,这是一种流导和增强材料的性能,以及树脂的粘度。化学反应的程度或固化程度也很重要,并且会导致模具填充过程中树脂粘度发生变化。确定纤维预制棒的渗透性。许多研究人员一直在使用液体流动分析。在这项研究中,提出了一种使用气流确定渗透率的新方案。在常规的液体流动方法中,测量聚合物在多孔介质中的径向传播并用于确定渗透率,而在气体流动方法中,测量并使用几种不同的瓶坯几何形状的流速。通过与常规方法比较,验证了气流法的有效性。

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